Aircraft traffic management system with digital technology

The aircraft traffic management system addresses inefficiencies and safety risks by integrating environmental data and proactive collision warnings, optimizing flight routes and preventing overlaps, thereby enhancing safety and efficiency.

WO2026142551A1PCT designated stage Publication Date: 2026-07-02ISTANBUL GELISIM UNIVSI

Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
ISTANBUL GELISIM UNIVSI
Filing Date
2025-02-17
Publication Date
2026-07-02

AI Technical Summary

Technical Problem

Existing air traffic management systems fail to adequately integrate environmental factors and dynamic interactions between aircraft, leading to inefficiencies and safety risks, particularly in optimizing flight routes and preventing collisions.

Method used

An aircraft traffic management system with digital technology that includes modules for data collection, analysis, coordination, detection, and warning, enabling continuous monitoring of environmental conditions and optimizing flight routes, preventing overlapping paths, and providing proactive collision warnings.

Benefits of technology

Enhances flight safety and efficiency by reducing fuel consumption, flight time, and operational costs through informed decision-making and proactive collision prevention, ensuring safe and organized air traffic management.

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Abstract

The present invention relates to an aircraft traffic management system with digital technology that can be used to provide effective coordination and traffic management in the airspace, using aircraft position data, environmental data (weather condition) and dynamic analysis to ensure the safe, efficient and accident-free movement of aircraft in air traffic management, characterized in that it comprises a data collection module (1) that collects environmental factors such as weather condition, wind speed and atmospheric pressure and optimizes flight routes accordingly, flight data collection module (2) that provides flight information by collecting position, speed, altitude and other important flight parameters of the aircraft instantaneously, an analysis and optimization module (3) that analyzes the collected data and optimizes flight routes according to environmental conditions, a coordination module (4) that ensures coordination between aircraft, preventing overlapping flight routes and maintaining safe distances, a detection and warning module (5) that detects potential collisions between aircraft early and sends warnings to the flight crew, a decision and management module (6) that provides data- based decision support to air traffic control centers, helping to manage flight routes in the safest and most efficient way, and a test module (7) that tests the integration of all modules of the system and evaluates the performance of the system by simulating various air traffic scenarios.
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